13#ifndef DUMUX_SOLIDMECHANICS_ELASTIC_FV_SPATIAL_PARAMS_HH
14#define DUMUX_SOLIDMECHANICS_ELASTIC_FV_SPATIAL_PARAMS_HH
19#include <dune/common/exceptions.hh>
24#include "spatialparamstraits_.hh"
33template<
class Gr
idGeometry,
class Scalar,
class Implementation>
37 using FVElementGeometry =
typename GridGeometry::LocalView;
38 using SubControlVolume =
typename GridGeometry::SubControlVolume;
39 using GridView =
typename GridGeometry::GridView;
40 using Element =
typename GridView::template Codim<0>::Entity;
41 using GlobalPosition =
typename Element::Geometry::GlobalCoordinate;
59 template<
class Sol
idSystem,
class ElementSolution>
61 const SubControlVolume& scv,
62 const ElementSolution& elemSol,
65 static_assert(SolidSystem::isInert(),
"Elastic model can only be used with inert solid systems");
68 if constexpr (SolidSystem::numInertComponents == 1)
72 return this->
asImp_().template inertVolumeFractionAtPos<SolidSystem>(scv.center(), compIdx);
83 template<
class Sol
idSystem>
85 { DUNE_THROW(Dune::InvalidStateException,
"The spatial parameters do not provide inertVolumeFractionAtPos() method."); }
100 template<
class ElemVolVars,
class FluxVarsCache>
102 const FVElementGeometry& fvGeometry,
103 const ElemVolVars& elemVolVars,
104 const FluxVarsCache& fluxVarsCache)
const
106 static_assert(
decltype(
isValid(Detail::hasLameParamsAtPos<GlobalPosition>())(this->
asImp_()))::value,
" \n\n"
107 " Your spatial params class has to either implement\n\n"
108 " const LameParams& lameParamsAtPos(const GlobalPosition& globalPos) const\n\n"
109 " or overload this function\n\n"
110 " template<class ElementSolution>\n"
111 " const LameParams& lameParams(const Element& element,\n"
112 " const FVElementGeometry& fvGeometry,\n"
113 " const ElemVolVars& elemVolVars,\n"
114 " const FluxVarsCache& fluxVarsCache) const\n\n");
116 return this->
asImp_().lameParamsAtPos(fluxVarsCache.ipGlobal());
The base class for spatial parameters of linear elastic geomechanical problems.
Definition: solidmechanics/elastic/fvspatialparams.hh:35
Scalar inertVolumeFractionAtPos(const GlobalPosition &globalPos, int compIdx) const
Function for defining the solid volume fraction. That is possibly solution dependent.
Definition: solidmechanics/elastic/fvspatialparams.hh:84
decltype(auto) lameParams(const Element &element, const FVElementGeometry &fvGeometry, const ElemVolVars &elemVolVars, const FluxVarsCache &fluxVarsCache) const
Define the Lame parameters.
Definition: solidmechanics/elastic/fvspatialparams.hh:101
FVElasticSpatialParams(std::shared_ptr< const GridGeometry > gridGeometry)
The constructor.
Definition: solidmechanics/elastic/fvspatialparams.hh:45
Scalar inertVolumeFraction(const Element &element, const SubControlVolume &scv, const ElementSolution &elemSol, int compIdx) const
Function for defining the solid volume fraction. That is possibly solution dependent.
Definition: solidmechanics/elastic/fvspatialparams.hh:60
The base class for spatial parameters used with finite-volume schemes.
Definition: common/fvspatialparams.hh:34
Implementation & asImp_()
Returns the implementation of the spatial parameters (static polymorphism)
Definition: common/fvspatialparams.hh:166
const GridGeometry & gridGeometry() const
The finite volume grid geometry.
Definition: common/fvspatialparams.hh:161
Basic spatial parameters to be used with finite-volume schemes.
constexpr auto isValid(const Expression &t)
A function that creates a test functor to do class member introspection at compile time.
Definition: isvalid.hh:81
A helper function for class member function introspection.